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82 benedikt93 1
#!/usr/bin/env python
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#
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#
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#    Copyright 2010 TheSeven, benedikt93, Farthen
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#
6
#
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#    This file is part of emCORE.
64 benedikt93 8
#
427 farthen 9
#    emCORE is free software: you can redistribute it and/or
64 benedikt93 10
#    modify it under the terms of the GNU General Public License as
11
#    published by the Free Software Foundation, either version 2 of the
12
#    License, or (at your option) any later version.
13
#
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#    emCORE is distributed in the hope that it will be useful,
64 benedikt93 15
#    but WITHOUT ANY WARRANTY; without even the implied warranty of
16
#    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
17
#    See the GNU General Public License for more details.
18
#
82 benedikt93 19
#    You should have received a copy of the GNU General Public License
427 farthen 20
#    along with emCORE.  If not, see <http://www.gnu.org/licenses/>.
64 benedikt93 21
#
787 theseven 22
#
64 benedikt93 23
 
402 farthen 24
"""
427 farthen 25
    Command line interface to communicate with emCORE devices.
402 farthen 26
    Run it without arguments to see usage information.
27
"""
28
 
171 farthen 29
import sys
30
import os
176 farthen 31
import time
215 theseven 32
import struct
346 theseven 33
import locale
64 benedikt93 34
 
176 farthen 35
from functools import wraps
36
 
427 farthen 37
import libemcore
38
import libemcoredata
532 farthen 39
from misc import Error, ArgumentError, ArgumentTypeError, Logger, getfuncdoc, gethwname, to_bool, to_int
64 benedikt93 40
 
236 farthen 41
 
444 farthen 42
def usage(errormsg=None, specific=False, docstring=True):
171 farthen 43
    """
44
        Prints the usage information.
45
        It is auto generated from various places.
46
    """
47
    logger = Logger()
396 farthen 48
    cmddict = Commandline.cmddict
49
    doc = getfuncdoc(cmddict)
171 farthen 50
    if not specific:
501 farthen 51
        logger.write("Please provide a command and (if needed) parameters as command line arguments\n\n")
52
        logger.write("Available commands:\n\n")
82 benedikt93 53
    else:
501 farthen 54
        logger.write("\n")
171 farthen 55
    for function in sorted(doc.items()):
56
        function = function[0]
57
        if specific == False or specific == function:
501 farthen 58
            logger.write(function + " ", 2)
171 farthen 59
            for arg in doc[function]['args']:
501 farthen 60
                logger.write("<" + arg + "> ")
171 farthen 61
            if doc[function]['kwargs']:
579 farthen 62
                for kwarg, kwvalue in doc[function]['kwargs']:
501 farthen 63
                    logger.write("[" + kwarg + " = " + str(kwvalue) + "] ")
171 farthen 64
            if doc[function]['varargs']:
501 farthen 65
                logger.write("<db1> ... <dbN>")
444 farthen 66
            if docstring and doc[function]['documentation']:
501 farthen 67
                logger.write("\n")
68
                logger.write(doc[function]['documentation']+"\n", 4)
69
            logger.write("\n")
70
    logger.write("\n")
517 farthen 71
 
171 farthen 72
    if errormsg:
73
        logger.error(str(errormsg)+"\n")
74
    exit(2)
75
 
76
 
77
def command(func):
78
    """
79
        Decorator for all commands.
80
        The decorated function is called with (self, all, other, arguments, ...)
81
    """
176 farthen 82
    @wraps(func)
172 farthen 83
    def decorator(*args):
171 farthen 84
        return func(args[0], *args[1:])
85
    func._command = True
86
    decorator.func = func
87
    return decorator
88
 
89
 
90
def commandClass(cls):
91
    """
92
        Decorator for the class. Sets the self.cmddict of the class
93
        to all functions decorated with @command
94
    """
95
    cls.cmddict = {}
582 farthen 96
    for attr, value in cls.__dict__.items():
171 farthen 97
        if getattr(value, 'func', False):
98
            if getattr(value.func, '_command', False):
99
                cls.cmddict[value.func.__name__] = value
100
    return cls
101
 
102
 
103
@commandClass
104
class Commandline(object):
105
    """
106
        If you want to create a new commandline function you just need to
107
        create a function with the name of it in this class and decorate
108
        it with the decorator @command. If you don't want to call the desired
109
        function (wrong arguments etc) just raise ArgumentError with or
341 farthen 110
        without an error message.
171 farthen 111
    """
112
    def __init__(self):
113
        self.logger = Logger()
114
        try:
499 farthen 115
            self.emcore = libemcore.Emcore(logger = self.logger)
427 farthen 116
        except libemcore.DeviceNotFoundError:
478 farthen 117
            self.logger.error("No emCORE device found!\n")
176 farthen 118
            exit(1)
119
        self.getinfo("version")
517 farthen 120
 
171 farthen 121
    def _parsecommand(self, func, args):
122
        # adds self to the commandline args.
123
        # this is needed because the functions need access to their class.
124
        args.insert(0, self)
125
        if func in self.cmddict:
126
            try:
172 farthen 127
                self.cmddict[func](*args)
582 farthen 128
            except (ArgumentError, libemcore.ArgumentError) as e:
176 farthen 129
                usage(e, specific=func)
427 farthen 130
            except (ArgumentError, libemcore.ArgumentError):
176 farthen 131
                usage("Syntax Error in function '" + func + "'", specific=func)
582 farthen 132
            except ArgumentTypeError as e:
176 farthen 133
                usage(e, specific=func)
171 farthen 134
            except NotImplementedError:
478 farthen 135
                self.logger.error("This function is not implemented yet!\n")
582 farthen 136
            except libemcore.DeviceError as e:
478 farthen 137
                self.logger.error(str(e) + "\n")
582 farthen 138
            except TypeError as e:
341 farthen 139
                # Only act on TypeErrors for the function we called, not on TypeErrors raised by another function.
171 farthen 140
                if str(e).split(" ", 1)[0] == func + "()":
516 farthen 141
                    self.logger.error(usage("Argument Error in '%s': Wrong argument count" % func, specific=func))
171 farthen 142
                else:
143
                    raise
427 farthen 144
            except libemcore.usb.core.USBError:
478 farthen 145
                self.logger.error("There is a problem with the USB connection.\n")
171 farthen 146
        else:
502 farthen 147
            usage("No such command!", docstring = False)
532 farthen 148
 
67 benedikt93 149
 
171 farthen 150
    @command
444 farthen 151
    def help(self):
502 farthen 152
        """ Displays this help """
153
        usage(docstring = True)
444 farthen 154
 
155
    @command
171 farthen 156
    def getinfo(self, infotype):
157
        """
427 farthen 158
            Get info on the running emCORE.
675 farthen 159
            <infotype> may be either of 'version', 'packetsize', 'mallocpoolbounds'.
171 farthen 160
        """
161
        if infotype == "version":
427 farthen 162
            hwtype = gethwname(self.emcore.lib.dev.hwtypeid)
516 farthen 163
            self.logger.info("Connected to %s v%d.%d.%d r%d running on %s\n" % (
164
                             libemcoredata.swtypes[self.emcore.lib.dev.swtypeid],
165
                             self.emcore.lib.dev.version.majorv,
166
                             self.emcore.lib.dev.version.minorv,
167
                             self.emcore.lib.dev.version.patchv,
168
                             self.emcore.lib.dev.version.revision,
169
                             hwtype))
343 farthen 170
 
171 farthen 171
        elif infotype == "packetsize":
516 farthen 172
            self.logger.info("Maximum packet sizes:\n")
173
            self.logger.info("command out: %d\n" % self.emcore.lib.dev.packetsizelimit.cout, 4)
174
            self.logger.info("command in: %d\n" % self.emcore.lib.dev.packetsizelimit.cin, 4)
175
            self.logger.info("data out: %d\n" % self.emcore.lib.dev.packetsizelimit.dout, 4)
176
            self.logger.info("data in: %d\n" % self.emcore.lib.dev.packetsizelimit.din, 4)
343 farthen 177
 
675 farthen 178
        elif infotype == "mallocpoolbounds":
179
            resp = self.emcore.getmallocpoolbounds()
180
            self.logger.info("The malloc pool is 0x%X - 0x%X" % (
181
                             self.emcore.lib.dev.mallocpool.lower,
182
                             self.emcore.lib.dev.mallocpool.upper - 1))
382 farthen 183
 
171 farthen 184
        else:
675 farthen 185
            raise ArgumentTypeError("one out of 'version', 'packetsize', 'mallocpoolbounds'", infotype)
64 benedikt93 186
 
171 farthen 187
    @command
188
    def reset(self, force=False):
189
        """
190
            Resets the device"
402 farthen 191
            If [force] is 1, the reset will be forced, otherwise it will be gracefully,
171 farthen 192
            which may take some time.
193
        """
532 farthen 194
        force = to_bool(force)
171 farthen 195
        if force: self.logger.info("Resetting forcefully...\n")
196
        else: self.logger.info("Resetting...\n")
427 farthen 197
        self.emcore.reset(force)
64 benedikt93 198
 
171 farthen 199
    @command
200
    def poweroff(self, force=False):
201
        """
202
            Powers the device off
402 farthen 203
            If [force] is 1, the poweroff will be forced, otherwise it will be gracefully,
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            which may take some time.
205
        """
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        force = to_bool(force)
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        if force: self.logger.info("Powering off forcefully...\n")
208
        else: self.logger.info("Powering off...\n")
427 farthen 209
        self.emcore.poweroff(force)
64 benedikt93 210
 
171 farthen 211
    @command
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    def uploadfile(self, filename, addr = None):
171 farthen 213
        """
214
            Uploads a file to the device
442 farthen 215
            <filename>: The path to the file
216
            [addr]: The address to upload the file to. Allocates a chunk of memory if not given.
171 farthen 217
        """
532 farthen 218
        addr = to_int(addr)
171 farthen 219
        try:
220
            f = open(filename, 'rb')
221
        except IOError:
222
            raise ArgumentError("File not readable. Does it exist?")
442 farthen 223
        if addr is not None:
516 farthen 224
            self.logger.info("Writing file '%s' to memory at 0x%X...\n" % (filename, addr))
442 farthen 225
        else:
516 farthen 226
            self.logger.info("Writing file '%s' to an allocated memory region...\n" % filename)
171 farthen 227
        with f:
442 farthen 228
            if addr is not None:
229
                self.emcore.write(addr, f.read())
230
            else:
231
                addr = self.emcore.upload(f.read())
232
            size = f.tell()
178 farthen 233
        f.close()
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        self.logger.info("Done uploading %d bytes to 0x%X\n" % (size, addr))
442 farthen 235
        return addr, size
176 farthen 236
 
171 farthen 237
    @command
238
    def downloadfile(self, addr, size, filename):
239
        """
574 theseven 240
            Downloads a region of memory from the device to a file
241
            <addr>: the address to download the data from
171 farthen 242
            <size>: the number of bytes to be read
243
            <filename>: the path to the file
244
        """
532 farthen 245
        addr = to_int(addr)
246
        size = to_int(size)
171 farthen 247
        try:
248
            f = open(filename, 'wb')
249
        except IOError:
250
            raise ArgumentError("Can not open file for write!")
516 farthen 251
        self.logger.info("Reading data from address 0x%X with the size 0x%X to '%s'..." %
252
                        (addr, size, filename))
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        with f:
427 farthen 254
            f.write(self.emcore.read(addr, size))
178 farthen 255
        f.close()
171 farthen 256
        self.logger.info("done\n")
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171 farthen 258
    @command
578 theseven 259
    def hexdump(self, addr, size, width = 16, wordsize = 1, separate = 4, align = False, \
260
                relative = False, ascii = True, asciisep = 8, asciirep = ".", zeropad = True):
575 theseven 261
        """
262
            Downloads a region of memory from the device and hexdumps it
263
            <addr>: the address to download the data from
264
            <size>: the number of bytes to be dumped
265
            [width]: the number of words per output line
266
            [wordsize]: the number of bytes per word (little endian)
267
            [separate]: add an additional space character every [separate] words
268
            [align]: if true, output lines are aligned to the line size
269
            [relative]: if true, the addresses displayed are relative to the <addr>, not zero
270
            [ascii]: add ASCII representations of the bytes to the output
271
            [asciisep]: add an additional space character every [asciisep] ASCII characters
578 theseven 272
            [asciirep]: replacement character for non-printable ASCII characters
273
            [zeropad]: pad hex values with zero instead of space characters
575 theseven 274
        """
275
        addr = to_int(addr)
276
        size = to_int(size)
277
        width = to_int(width)
278
        wordsize = to_int(wordsize)
279
        separate = to_int(separate)
280
        align = to_bool(align)
281
        relative = to_bool(relative)
282
        ascii = to_bool(ascii)
283
        asciisep = to_int(asciisep)
578 theseven 284
        zeropad = to_bool(zeropad)
575 theseven 285
        if addr % wordsize != 0: raise ArgumentError("Address is not word aligned!")
286
        if size % wordsize != 0: raise ArgumentError("Size is not word aligned!")
287
        if align: skip = addr % (wordsize * width)
288
        else: skip = 0
289
        if relative: base = 0
290
        else: base = addr
291
        data = self.emcore.read(addr, size)
292
        for r in range(-skip, size, wordsize * width):
293
            sys.stdout.write("%08X:" % (base + r))
294
            for i in range(r, r + wordsize * width, wordsize):
295
                if i - r > 0 and (i - r) % (separate * wordsize) == 0: sys.stdout.write(" ")
296
                if i >= 0 and i < size:
297
                    w = 0
298
                    for b in range(wordsize):
577 theseven 299
                        w = w | (struct.unpack("B", data[i + b])[0] << (8 * b))
578 theseven 300
                    sys.stdout.write(((" %%0%dX" if zeropad else " %%%dX") % (wordsize * 2)) % w)
575 theseven 301
                else: sys.stdout.write(" " * (wordsize * 2 + 1))
302
            if ascii:
303
                sys.stdout.write(" |")
304
                for i in range(r, r + wordsize * width):
305
                    if i - r > 0 and (i - r) % asciisep == 0: sys.stdout.write(" ")
306
                    if i >= 0 and i < size:
307
                        if ord(data[i]) > 0x1f: sys.stdout.write(data[i])
578 theseven 308
                        else: sys.stdout.write(asciirep)
575 theseven 309
                    else: sys.stdout.write(" ")
310
                sys.stdout.write("|")
311
            sys.stdout.write("\n")
312
 
313
    @command
774 theseven 314
    def uploadbyte(self, addr, byte):
315
        """
316
            Uploads a single byte to the device
317
            <addr>: the address to upload the byte to
318
            <byte>: the byte to upload
319
        """
320
        addr = to_int(addr)
321
        byte = to_int(byte)
322
        if byte > 0xFF:
323
            raise ArgumentError("Specified integer too long")
324
        data = struct.pack("B", byte)
325
        self.emcore.write(addr, data)
326
        self.logger.info("Byte '0x%X' written successfully to 0x%X\n" % (byte, addr))
327
 
328
    @command
329
    def downloadbyte(self, addr):
330
        """
331
            Downloads a single byte from the device and prints it to the console window
332
            <addr>: the address to download the byte from
333
        """
334
        addr = to_int(addr)
335
        data = self.emcore.read(addr, 1)
336
        byte = struct.unpack("B", data)[0]
337
        self.logger.info("Read '0x%X' from address 0x%X\n" % (byte, addr))
338
 
339
    @command
171 farthen 340
    def uploadint(self, addr, integer):
341
        """
342
            Uploads a single integer to the device
260 theseven 343
            <addr>: the address to upload the integer to
344
            <integer>: the integer to upload
171 farthen 345
        """
532 farthen 346
        addr = to_int(addr)
347
        integer = to_int(integer)
171 farthen 348
        if integer > 0xFFFFFFFF:
349
            raise ArgumentError("Specified integer too long")
548 farthen 350
        data = struct.pack("<I", integer)
427 farthen 351
        self.emcore.write(addr, data)
516 farthen 352
        self.logger.info("Integer '0x%X' written successfully to 0x%X\n" % (integer, addr))
517 farthen 353
 
171 farthen 354
    @command
355
    def downloadint(self, addr):
356
        """
357
            Downloads a single integer from the device and prints it to the console window
236 farthen 358
            <addr>: the address to download the integer from
171 farthen 359
        """
532 farthen 360
        addr = to_int(addr)
427 farthen 361
        data = self.emcore.read(addr, 4)
548 farthen 362
        integer = struct.unpack("<I", data)[0]
516 farthen 363
        self.logger.info("Read '0x%X' from address 0x%X\n" % (integer, addr))
517 farthen 364
 
171 farthen 365
    @command
176 farthen 366
    def i2cread(self, bus, slave, addr, size):
171 farthen 367
        """
368
            Reads data from an I2C device
402 farthen 369
            <bus>: the bus index
370
            <slave>: the slave address
371
            <addr>: the start address on the I2C device
372
            <size>: the number of bytes to read
171 farthen 373
        """
532 farthen 374
        bus = to_int(bus)
375
        slave = to_int(slave)
376
        addr = to_int(addr)
377
        size = to_int(size)
427 farthen 378
        data = self.emcore.i2cread(bus, slave, addr, size)
548 farthen 379
        bytes = struct.unpack("<%dB" % len(data), data)
236 farthen 380
        self.logger.info("Data read from I2C:\n")
381
        for index, byte in enumerate(bytes):
533 theseven 382
            self.logger.info("%02X: %02X\n" % (addr + index, byte))
517 farthen 383
 
171 farthen 384
    @command
176 farthen 385
    def i2cwrite(self, bus, slave, addr, *args):
171 farthen 386
        """
387
            Writes data to an I2C device
402 farthen 388
            <bus>: the bus index
389
            <slave>: the slave address
390
            <addr>: the start address on the I2C device
532 farthen 391
            <db1> ... <dbN>: the data in single bytes,
236 farthen 392
                seperated by whitespaces, eg. 37 5A 4F EB
171 farthen 393
        """
532 farthen 394
        bus = to_int(bus)
395
        slave = to_int(slave)
396
        addr = to_int(addr)
176 farthen 397
        data = ""
171 farthen 398
        for arg in args:
532 farthen 399
            data += chr(to_int(arg))
236 farthen 400
        self.logger.info("Writing data to I2C...\n")
427 farthen 401
        self.emcore.i2cwrite(bus, slave, addr, data)
236 farthen 402
        self.logger.info("done\n")
517 farthen 403
 
171 farthen 404
    @command
176 farthen 405
    def console(self):
171 farthen 406
        """
176 farthen 407
            Reads data from the USB console continuously
171 farthen 408
        """
176 farthen 409
        while True:
427 farthen 410
            resp = self.emcore.usbcread()
599 farthen 411
            self.logger.write(resp.data, target = "stdout")
774 theseven 412
#            time.sleep(0.1 / resp.maxsize * (resp.maxsize - len(resp.data)))
517 farthen 413
 
171 farthen 414
    @command
176 farthen 415
    def writeusbconsole(self, *args):
171 farthen 416
        """
176 farthen 417
            Writes the string <db1> ... <dbN> to the USB console.
171 farthen 418
        """
176 farthen 419
        text = ""
420
        for word in args:
421
            text += word + " "
422
        text = text[:-1]
516 farthen 423
        self.logger.info("Writing '%s' to the usb console\n" % text)
427 farthen 424
        self.emcore.usbcwrite(text)
517 farthen 425
 
171 farthen 426
    @command
176 farthen 427
    def readdevconsole(self, bitmask):
171 farthen 428
        """
176 farthen 429
            Reads data continuously from one or more of the device's consoles.
430
            <bitmask>: the bitmask of the consoles to read from.
171 farthen 431
        """
532 farthen 432
        bitmask = to_int(bitmask)
176 farthen 433
        while True:
427 farthen 434
            resp = self.emcore.cread()
501 farthen 435
            self.logger.write(resp.data)
176 farthen 436
            time.sleep(0.1 / resp.maxsize * (resp.maxsize - len(resp.data)))
437
 
171 farthen 438
    @command
176 farthen 439
    def writedevconsole(self, bitmask, *args):
171 farthen 440
        """
176 farthen 441
            Writes the string <db1> ... <dbN> to one or more of the device's consoles.
442
            <bitmask>: the bitmask of the consoles to write to
171 farthen 443
        """
532 farthen 444
        bitmask = to_int(bitmask)
176 farthen 445
        text = ""
446
        for word in args:
447
            text += word + " "
448
        text = text[:-1]
516 farthen 449
        self.logger.info("Writing '%s' to the device consoles identified with 0x%X\n" % (text, bitmask))
427 farthen 450
        self.emcore.cwrite(text, bitmask)
517 farthen 451
 
171 farthen 452
    @command
453
    def flushconsolebuffers(self, bitmask):
454
        """
455
            flushes one or more of the device consoles' buffers.
456
            <bitmask>: the bitmask of the consoles to be flushed
457
        """
532 farthen 458
        bitmask = to_int(bitmask)
516 farthen 459
        self.logger.info("Flushing consoles identified with the bitmask 0x%X\n" % bitmask)
427 farthen 460
        self.emcore.cflush(bitmask)
517 farthen 461
 
171 farthen 462
    @command
463
    def getprocinfo(self):
464
        """
465
            Fetches data on the currently running processes
466
        """
173 farthen 467
        import datetime
427 farthen 468
        threads = self.emcore.getprocinfo()
382 farthen 469
        threadload = 0
470
        idleload = 0
173 farthen 471
        for thread in threads:
392 theseven 472
            if thread.id != 0:
473
                threadload += thread.cpuload / 255.
382 farthen 474
            else:
392 theseven 475
                idleload += thread.cpuload / 255.
382 farthen 476
        coreload = 1 - (threadload + idleload)
477
        cpuload = threadload + coreload
392 theseven 478
        self.logger.info("Threads: %d, CPU load: %.1f%%, kernel load: %.1f%%, user load: %.1f%%\n\n"
479
                         % (len(threads), cpuload * 100, coreload * 100, threadload * 100))
382 farthen 480
        self.logger.info("Thread dump:\n")
481
        for thread in threads:
516 farthen 482
            self.logger.info("%s:\n" % thread.name, 2)
483
            self.logger.info("Threadstruct address: 0x%X\n" % thread.addr, 4)
484
            self.logger.info("Thread type: %s\n" % thread.thread_type, 4)
485
            self.logger.info("Thread state: %s\n" % thread.state, 4)
605 farthen 486
            if thread.block_type != "THREAD_NOT_BLOCKED":
609 farthen 487
                self.logger.info("Block type: %s\n" % thread.block_type, 4)
488
                if thread.block_type == "THREAD_BLOCK_MUTEX":
489
                    self.logger.info("Blocked by mutex: 0x%X\n" % thread.blocked_by, 6)
490
                    self.logger.info("Owner: %s (0x%X)\n" % (thread.blocked_by.owner.name, thread.blocked_by.owner), 8)
491
                elif thread.block_type == "THREAD_BLOCK_WAKEUP":
492
                    self.logger.info("Blocked by wakeup: 0x%X\n" % thread.blocked_by, 6)
516 farthen 493
            self.logger.info("Priority: %d/255\n" % thread.priority, 4)
396 farthen 494
            self.logger.info("Current CPU load: %.1f%%\n" % ((thread.cpuload * 100) / 255.), 4)
516 farthen 495
            self.logger.info("CPU time (total): %s\n" % datetime.timedelta(microseconds = thread.cputime_total), 4)
496
            self.logger.info("Stack address: 0x%X\n" % thread.stack, 4)
396 farthen 497
            self.logger.info("Registers:\n", 4)
177 farthen 498
            for registerrange in range(4):
499
                for register in range(registerrange, 16, 4):
500
                    registerrepr = "r"+str(register)
606 farthen 501
                    self.logger.info("{0:>3s}: 0x{1:08X}   ".format(registerrepr, thread.regs[register]), 5)
177 farthen 502
                self.logger.info("\n")
506 farthen 503
            self.logger.info("cpsr: 0x{0:08X}".format(thread.cpsr), 6)
173 farthen 504
            self.logger.info("\n")
505
 
171 farthen 506
    @command
507
    def lockscheduler(self):
508
        """
509
            Locks (freezes) the scheduler
510
        """
176 farthen 511
        self.logger.info("Will now lock scheduler\n")
427 farthen 512
        self.emcore.lockscheduler()
178 farthen 513
 
171 farthen 514
    @command
515
    def unlockscheduler(self):
516
        """
517
            Unlocks (unfreezes) the scheduler
518
        """
176 farthen 519
        self.logger.info("Will now unlock scheduler\n")
427 farthen 520
        self.emcore.unlockscheduler()
178 farthen 521
 
171 farthen 522
    @command
516 farthen 523
    def suspendthread(self, threadaddr):
171 farthen 524
        """
516 farthen 525
            Suspends the thread with the thread address <threadaddr>
171 farthen 526
        """
532 farthen 527
        threadaddr = to_int(threadaddr)
516 farthen 528
        self.logger.info("Suspending the thread with the threadaddr 0x%X\n" % threadaddr)
529
        self.emcore.suspendthread(threadaddr)
517 farthen 530
 
171 farthen 531
    @command
516 farthen 532
    def resumethread(self, threadaddr):
171 farthen 533
        """
516 farthen 534
            Resumes the thread with the thread address <threadaddr>
171 farthen 535
        """
532 farthen 536
        threadaddr = to_int(threadaddr)
516 farthen 537
        self.logger.info("Resuming the thread with the threadaddr 0x%X\n" % threadaddr)
538
        self.emcore.resumethread(threadaddr)
517 farthen 539
 
171 farthen 540
    @command
516 farthen 541
    def killthread(self, threadaddr):
171 farthen 542
        """
516 farthen 543
            Kills the thread with the thread address <threadaddr>
171 farthen 544
        """
532 farthen 545
        threadaddr = to_int(threadaddr)
516 farthen 546
        self.logger.info("Killing the thread with the threadaddr 0x%X\n" % threadaddr)
547
        self.emcore.killthread(threadaddr)
517 farthen 548
 
171 farthen 549
    @command
550
    def createthread(self, nameptr, entrypoint, stackptr, stacksize, threadtype, priority, state):
551
        """
516 farthen 552
            Creates a new thread and returns its thread pointer
402 farthen 553
            <namepointer>: a pointer to the thread's name
554
            <entrypoint>: a pointer to the entrypoint of the thread
555
            <stackpointer>: a pointer to the stack of the thread
556
            <stacksize>: the size of the thread's stack
516 farthen 557
            <threadtype>: the thread type, vaild are: 0 => user thread, 1 => system thread
402 farthen 558
            <priority>: the priority of the thread, from 1 to 255
559
            <state>: the thread's initial state, valid are: 1 => ready, 0 => suspended
171 farthen 560
        """
532 farthen 561
        nameptr = to_int(nameptr)
562
        entrypoint = to_int(entrypoint)
563
        stackptr = to_int(stackptr)
564
        stacksize = to_int(stacksize)
565
        priority = to_int(priority)
516 farthen 566
        data = self.emcore.createthread(nameptr, entrypoint, stackptr, stacksize, threadtype, priority, state)
427 farthen 567
        name = self.emcore.readstring(nameptr)
516 farthen 568
        self.logger.info("Created a thread with the thread pointer 0x%X, the name \"%s\", the entrypoint at 0x%X," \
569
                         "the stack at 0x%X with a size of 0x%X and a priority of %d/255\n" %
570
                        (data.threadptr, name, entrypoint, stackptr, stacksize, priority))
172 farthen 571
 
572
    @command
573
    def run(self, filename):
574
        """
427 farthen 575
            Uploads the emCORE application <filename> to
236 farthen 576
            the memory and executes it
172 farthen 577
        """
236 farthen 578
        try:
579
            f = open(filename, 'rb')
580
        except IOError:
581
            raise ArgumentError("File not readable. Does it exist?")
238 farthen 582
        with f:
427 farthen 583
            data = self.emcore.run(f.read())
516 farthen 584
        self.logger.info("Executed emCORE application as thread 0x%X\n" % data.thread)
517 farthen 585
 
171 farthen 586
    @command
173 farthen 587
    def execimage(self, addr):
171 farthen 588
        """
427 farthen 589
            Executes the emCORE application at <addr>.
171 farthen 590
        """
532 farthen 591
        addr = to_int(addr)
516 farthen 592
        self.logger.info("Starting emCORE app at 0x%X\n" % addr)
427 farthen 593
        self.emcore.execimage(addr)
176 farthen 594
 
171 farthen 595
    @command
176 farthen 596
    def flushcaches(self):
171 farthen 597
        """
176 farthen 598
            Flushes the CPUs data and instruction caches.
599
        """
600
        self.logger.info("Flushing CPU data and instruction caches...")
427 farthen 601
        self.emcore.flushcaches()
176 farthen 602
        self.logger.info("done\n")
603
 
604
    @command
605
    def readbootflash(self, addr_flash, addr_mem, size):
606
        """
171 farthen 607
            Reads <size> bytes from bootflash to memory.
608
            <addr_bootflsh>: the address in bootflash to read from
609
            <addr_mem>: the address in memory to copy the data to
610
        """
532 farthen 611
        addr_flash = to_int(addr_flash)
612
        addr_mem = to_int(addr_mem)
613
        size = to_int(size)
516 farthen 614
        self.logger.info("Dumping boot flash from 0x%X - 0x%X to 0x%X - 0x%X\n" %
615
                        (addr_flash, addr_flash + size, addr_mem, addr_mem + size))
427 farthen 616
        self.emcore.bootflashread(addr_mem, addr_flash, size)
176 farthen 617
 
171 farthen 618
    @command
176 farthen 619
    def writebootflash(self, addr_flash, addr_mem, size, force=False):
171 farthen 620
        """
621
            Writes <size> bytes from memory to bootflash.
622
            ATTENTION: Don't call this unless you really know what you're doing!
623
            This may BRICK your device (unless it has a good recovery option)
624
            <addr_mem>: the address in memory to copy the data from
625
            <addr_bootflsh>: the address in bootflash to write to
775 theseven 626
            [force]: Use this flag to suppress the 10 seconds delay
171 farthen 627
        """
532 farthen 628
        addr_flash = to_int(addr_flash)
629
        addr_mem = to_int(addr_mem)
630
        size = to_int(size)
631
        force = to_bool(force)
516 farthen 632
        self.logger.warn("Writing boot flash from the memory in 0x%X - 0x%X to 0x%X - 0x%X\n" %
633
                        (addr_mem, addr_mem + size, addr_flash, addr_flash + size))
174 farthen 634
        if force == False:
382 farthen 635
            self.logger.warn("If this was not what you intended press Ctrl-C NOW")
176 farthen 636
            for i in range(10):
174 farthen 637
                self.logger.info(".")
638
                time.sleep(1)
639
            self.logger.info("\n")
427 farthen 640
        self.emcore.bootflashwrite(addr_mem, addr_flash, size)
176 farthen 641
 
171 farthen 642
    @command
442 farthen 643
    def runfirmware(self, targetaddr, filename):
171 farthen 644
        """
402 farthen 645
            Uploads the firmware in <filename>
442 farthen 646
            to an allocated buffer and executes it at <targetaddr>.
171 farthen 647
        """
532 farthen 648
        targetaddr = to_int(targetaddr)
442 farthen 649
        addr, size = self.uploadfile(filename)
650
        self.execfirmware(targetaddr, addr, size)
64 benedikt93 651
 
171 farthen 652
    @command
442 farthen 653
    def execfirmware(self, targetaddr, addr, size):
176 farthen 654
        """
442 farthen 655
            Moves the firmware at <addr> with <size> to <targetaddr> and executes it
176 farthen 656
        """
532 farthen 657
        targetaddr = to_int(targetaddr)
658
        addr = to_int(addr)
536 farthen 659
        size = to_int(size)
660
        self.logger.info("Running firmware at 0x%X. Bye.\n" % targetaddr)
442 farthen 661
        self.emcore.execfirmware(targetaddr, addr, size)
176 farthen 662
 
663
    @command
171 farthen 664
    def aesencrypt(self, addr, size, keyindex):
665
        """
172 farthen 666
            Encrypts a buffer using a hardware key
402 farthen 667
            <addr>: the starting address of the buffer
668
            <size>: the size of the buffer
669
            <keyindex>: the index of the key in the crypto unit
171 farthen 670
        """
532 farthen 671
        addr = to_int(addr)
672
        size = to_int(size)
673
        keyindex = to_int(keyindex)
427 farthen 674
        self.emcore.aesencrypt(addr, size, keyindex)
82 benedikt93 675
 
171 farthen 676
    @command
677
    def aesdecrypt(self, addr, size, keyindex):
678
        """
172 farthen 679
            Decrypts a buffer using a hardware key
402 farthen 680
            <addr>: the starting address of the buffer
681
            <size>: the size of the buffer
682
            <keyindex>: the index of the key in the crypto unit
171 farthen 683
        """
532 farthen 684
        addr = to_int(addr)
685
        size = to_int(size)
686
        keyindex = to_int(keyindex)
427 farthen 687
        self.emcore.aesdecrypt(addr, size, keyindex)
172 farthen 688
 
689
    @command
690
    def hmac_sha1(self, addr, size, destination):
691
        """
402 farthen 692
            Generates a HMAC-SHA1 hash of the buffer
693
            <addr>: the starting address of the buffer
694
            <size>: the size of the buffer
695
            <destination>: the location where the key will be stored
172 farthen 696
        """
532 farthen 697
        addr = to_int(addr)
698
        size = to_int(size)
699
        destination = to_int(destination)
172 farthen 700
        sha1size = 0x14
516 farthen 701
        self.logger.info("Generating hmac-sha1 hash from the buffer at 0x%X with the size 0x%X and saving it to 0x%X - 0x%X\n" %
702
                        (addr, size, destination, destination + sha1size))
427 farthen 703
        self.emcore.hmac_sha1(addr, size, destination)
172 farthen 704
        self.logger.info("done\n")
427 farthen 705
        data = self.emcore.read(destination, sha1size)
172 farthen 706
        hash = ord(data)
516 farthen 707
        self.logger.info("The generated hash is 0x%X\n" % hash)
517 farthen 708
 
227 theseven 709
    @command
710
    def ipodnano2g_getnandinfo(self):
711
        """
712
            Target-specific function: ipodnano2g
713
            Gathers some information about the NAND chip used
714
        """
427 farthen 715
        data = self.emcore.ipodnano2g_getnandinfo()
516 farthen 716
        self.logger.info("NAND chip type: 0x%X\n" % data["type"])
717
        self.logger.info("Number of banks: %d\n" % data["banks"])
718
        self.logger.info("Number of blocks: %d\n" % data["blocks"])
719
        self.logger.info("Number of user blocks: %d\n" % data["userblocks"])
720
        self.logger.info("Pages per block: %d\n" % data["pagesperblock"])
517 farthen 721
 
227 theseven 722
    @command
404 farthen 723
    def ipodnano2g_nandread(self, addr, start, count, doecc=True, checkempty=True):
227 theseven 724
        """
725
            Target-specific function: ipodnano2g
726
            Reads data from the NAND chip into memory
402 farthen 727
            <addr>: the memory location where the data is written to
728
            <start>: start block
729
            <count>: block count
404 farthen 730
            [doecc]: use ecc error correction data
731
            [checkempty]: set statusflags if pages are empty
227 theseven 732
        """
532 farthen 733
        addr = to_int(addr)
734
        start = to_int(start)
735
        count = to_int(count)
736
        doecc = to_bool(doecc)
737
        checkempty = to_bool(checkempty)
516 farthen 738
        self.logger.info("Reading 0x%X NAND pages starting at 0x%X to memory at 0x%X..." %
739
                        (count, start, addr))
427 farthen 740
        self.emcore.ipodnano2g_nandread(addr, start, count, doecc, checkempty)
227 theseven 741
        self.logger.info("done\n")
517 farthen 742
 
227 theseven 743
    @command
404 farthen 744
    def ipodnano2g_nandwrite(self, addr, start, count, doecc=True):
227 theseven 745
        """
746
            Target-specific function: ipodnano2g
747
            Writes data to the NAND chip
402 farthen 748
            <addr>: the memory location where the data is read from
749
            <start>: start block
750
            <count>: block count
404 farthen 751
            [doecc]: create ecc error correction data
227 theseven 752
        """
532 farthen 753
        addr = to_int(addr)
754
        start = to_int(start)
755
        count = to_int(count)
756
        doecc = to_bool(doecc)
516 farthen 757
        self.logger.info("Writing 0x%X NAND pages starting at 0x%X from memory at 0x%X..." %
758
                        (count, start, addr))
427 farthen 759
        self.emcore.ipodnano2g_nandwrite(addr, start, count, doecc)
227 theseven 760
        self.logger.info("done\n")
517 farthen 761
 
227 theseven 762
    @command
763
    def ipodnano2g_nanderase(self, addr, start, count):
764
        """
765
            Target-specific function: ipodnano2g
766
            Erases blocks on the NAND chip and stores the results to memory
402 farthen 767
            <addr>: the memory location where the results are stored
768
            <start>: start block
769
            <count>: block count
227 theseven 770
        """
532 farthen 771
        addr = to_int(addr)
772
        start = to_int(start)
773
        count = to_int(count)
516 farthen 774
        self.logger.info("Erasing 0x%X NAND pages starting at 0x%X and logging to 0x%X..." %
775
                        (count, start, addr))
427 farthen 776
        self.emcore.ipodnano2g_nanderase(addr, start, count)
227 theseven 777
        self.logger.info("done\n")
517 farthen 778
 
228 theseven 779
    @command
780
    def ipodnano2g_dumpnand(self, filenameprefix):
781
        """
782
            Target-specific function: ipodnano2g
783
            Dumps the whole NAND chip to four files
402 farthen 784
            <filenameprefix>: prefix of the files that will be created
228 theseven 785
        """
427 farthen 786
        info = self.emcore.ipodnano2g_getnandinfo()
228 theseven 787
        try:
775 theseven 788
            buf = self.emcore.memalign(0x10, 0x1088000)
789
            self.logger.info("Dumping NAND contents...")
790
            try:
791
                infofile = open(filenameprefix+"_info.txt", 'wb')
792
                datafile = open(filenameprefix+"_data.bin", 'wb')
793
                sparefile = open(filenameprefix+"_spare.bin", 'wb')
794
                statusfile = open(filenameprefix+"_status.bin", 'wb')
795
            except IOError:
796
                raise ArgumentError("Can not open file for writing!")
797
            infofile.write("NAND chip type: 0x%X\r\n" % info["type"])
798
            infofile.write("Number of banks: %d\r\n" % info["banks"])
799
            infofile.write("Number of blocks: %d\r\n" % info["blocks"])
800
            infofile.write("Number of user blocks: %d\r\n" % info["userblocks"])
801
            infofile.write("Pages per block: %d\r\n" % info["pagesperblock"])
802
            for i in range(info["banks"] * info["blocks"] * info["pagesperblock"] / 8192):
803
                self.logger.info(".")
804
                self.emcore.ipodnano2g_nandread(buf, i * 8192, 8192, 1, 1)
805
                datafile.write(self.emcore.read(buf, 0x01000000))
806
                sparefile.write(self.emcore.read(buf + 0x01000000, 0x00080000))
807
                statusfile.write(self.emcore.read(buf + 0x01080000, 0x00008000))
808
            infofile.close()
809
            datafile.close()
810
            sparefile.close()
811
            statusfile.close()
812
            self.logger.info("done\n")
813
        finally:
814
            self.emcore.free(buf)
815
 
816
    @command
817
    def ipodnano2g_restorenand(self, filenameprefix, force=False):
818
        """
819
            Target-specific function: ipodnano2g
820
            Restores the whole NAND chip from <filenameprefix>_data.bin and <filenameprefix>_spare.bin
821
            [force]: use this flag to suppress the 10 seconds delay
822
        """
823
        self.logger.warn("Flashing NAND image %s!\n" % filenameprefix)
824
        if force == False:
825
            self.logger.warn("If this was not what you intended press Ctrl-C NOW")
826
            for i in range(10):
827
                self.logger.info(".")
828
                time.sleep(1)
829
            self.logger.info("\n\n")
830
        info = self.emcore.ipodnano2g_getnandinfo()
831
        ppb = info["pagesperblock"]
832
        banks = info["banks"]
833
        blocks = info["blocks"]
834
        try:
835
            if (os.path.getsize(filenameprefix+"_data.bin") != blocks * banks * ppb * 2048):
836
                raise ArgumentError("Data file size does not match flash size!")
837
            if (os.path.getsize(filenameprefix+"_spare.bin") != blocks * banks * ppb * 64):
838
                raise ArgumentError("Spare file size does not match flash size!")
839
            datafile = open(filenameprefix+"_data.bin", 'rb')
840
            sparefile = open(filenameprefix+"_spare.bin", 'rb')
228 theseven 841
        except IOError:
775 theseven 842
            raise ArgumentError("Can not open input files!")
843
        try:
776 theseven 844
            buf = self.emcore.memalign(0x10, 0x844)
775 theseven 845
            for block in range(info["blocks"]):
846
                for bank in range(info["banks"]):
776 theseven 847
                    self.logger.info("\r    Erasing block %d bank %d         " % (block, bank))
775 theseven 848
                    self.emcore.ipodnano2g_nanderase(buf, block * banks + bank, 1)
849
                    rc = struct.unpack("<I", self.emcore.read(buf, 4))[0]
850
                    if rc != 0: self.logger.info("\rBlock %d bank %d erase failed with RC %08X\n" % (block, bank, rc))
851
                for page in range(ppb):
776 theseven 852
                    for bank in range(banks):
853
                        data = datafile.read(2048) + sparefile.read(64)
854
                        if data == "\xff" * 2112: continue
855
                        self.emcore.write(buf, data)
856
                        self.logger.info("\rProgramming block %d page %d bank %d" % (block, page, bank))
857
                        self.emcore.ipodnano2g_nandwrite(buf, ((block * ppb) + page) * banks + bank, 1, 0)
858
                        rc = struct.unpack("<I", self.emcore.read(buf + 2112, 4))[0]
859
                        if rc != 0: self.logger.info("\rBlock %d bank %d page %d programming failed with RC %08X\n" % (block, bank, page, rc))
775 theseven 860
        finally:
861
            self.emcore.free(buf)
228 theseven 862
        datafile.close()
863
        sparefile.close()
776 theseven 864
        self.logger.info("\ndone\n")
517 farthen 865
 
228 theseven 866
    @command
867
    def ipodnano2g_wipenand(self, filename, force=False):
868
        """
869
            Target-specific function: ipodnano2g
870
            Wipes the whole NAND chip and logs the result to a file
402 farthen 871
            <filename>: location of the log file
775 theseven 872
            [force]: use this flag to suppress the 10 seconds delay
228 theseven 873
        """
382 farthen 874
        self.logger.warn("Wiping the whole NAND chip!\n")
228 theseven 875
        if force == False:
382 farthen 876
            self.logger.warn("If this was not what you intended press Ctrl-C NOW")
228 theseven 877
            for i in range(10):
878
                self.logger.info(".")
879
                time.sleep(1)
880
            self.logger.info("\n")
881
        try:
775 theseven 882
            buf = self.emcore.malloc(0x100)
883
            info = self.emcore.ipodnano2g_getnandinfo()
884
            self.logger.info("Wiping NAND contents...")
885
            try:
886
                statusfile = open(filename, 'wb')
887
            except IOError:
888
                raise ArgumentError("Can not open file for writing!")
889
            for i in range(info["banks"] * info["blocks"] / 64):
890
                self.logger.info(".")
891
                self.emcore.ipodnano2g_nanderase(buf, i * 64, 64)
892
                statusfile.write(self.emcore.read(buf, 0x00000100))
893
            statusfile.close()
894
            self.logger.info("done\n")
895
        finally:
896
            self.emcore.free(buf)
517 farthen 897
 
346 theseven 898
    @command
787 theseven 899
    def ipodclassic_readbbt(self, filename, tempaddr = None):
900
        """
901
            Target-specific function: ipodclassic
902
            Reads the bad block table from the hard disk to memory at <tempaddr>
903
            (or an allocated block if not given) and writes it to <filename>
904
        """
905
        tempaddr = to_int(tempaddr)
906
        try:
907
            f = open(filename, 'wb')
908
        except IOError:
909
            raise ArgumentError("File not writable.")
910
        self.logger.info("Reading bad block table from disk...")
911
        f.write(self.emcore.ipodclassic_readbbt(tempaddr))
912
        f.close()
913
        self.logger.info(" done\n")
914
 
915
    @command
585 theseven 916
    def ipodclassic_writebbt(self, filename, tempaddr = None):
346 theseven 917
        """
918
            Target-specific function: ipodclassic
585 theseven 919
            Uploads the bad block table <filename> to memory at <tempaddr>
920
            (or an allocated block if not given) and writes it to the hard disk
346 theseven 921
        """
602 theseven 922
        tempaddr = to_int(tempaddr)
346 theseven 923
        try:
924
            f = open(filename, 'rb')
925
        except IOError:
926
            raise ArgumentError("File not readable. Does it exist?")
927
        self.logger.info("Writing bad block table to disk...")
427 farthen 928
        data = self.emcore.ipodclassic_writebbt(f.read(), tempaddr)
346 theseven 929
        f.close()
930
        self.logger.info(" done\n")
517 farthen 931
 
346 theseven 932
    @command
379 theseven 933
    def getvolumeinfo(self, volume):
934
        """
935
            Gathers some information about a storage volume used
404 farthen 936
            <volume>: volume id
379 theseven 937
        """
532 farthen 938
        volume = to_int(volume)
427 farthen 939
        data = self.emcore.storage_get_info(volume)
516 farthen 940
        self.logger.info("Sector size: %d\n" % data["sectorsize"])
941
        self.logger.info("Number of sectors: %d\n" % data["numsectors"])
942
        self.logger.info("Vendor: %s\n" % data["vendor"])
943
        self.logger.info("Product: %s\n" % data["product"])
944
        self.logger.info("Revision: %s\n" % data["revision"])
517 farthen 945
 
379 theseven 946
    @command
947
    def readrawstorage(self, volume, sector, count, addr):
948
        """
949
            Reads <count> sectors starting at <sector> from storage <volume> to memory at <addr>.
950
        """
532 farthen 951
        volume = to_int(volume)
952
        sector = to_int(sector)
953
        count = to_int(count)
954
        addr = to_int(addr)
379 theseven 955
        self.logger.info("Reading volume %s sectors %X - %X to %08X..." % (volume, sector, sector + count - 1, addr))
427 farthen 956
        self.emcore.storage_read_sectors_md(volume, sector, count, addr)
379 theseven 957
        self.logger.info("done\n")
517 farthen 958
 
379 theseven 959
    @command
960
    def writerawstorage(self, volume, sector, count, addr):
961
        """
962
            Writes memory contents at <addr> to <count> sectors starting at <sector> on storage <volume>.
963
        """
532 farthen 964
        volume = to_int(volume)
965
        sector = to_int(sector)
966
        count = to_int(count)
967
        addr = to_int(addr)
379 theseven 968
        self.logger.info("Writing %08X to volume %s sectors %X - %X..." % (addr, volume, sector, sector + count - 1))
427 farthen 969
        self.emcore.storage_write_sectors_md(volume, sector, count, addr)
379 theseven 970
        self.logger.info("done\n")
517 farthen 971
 
379 theseven 972
    @command
475 farthen 973
    def readrawstoragefile(self, volume, sector, count, file, buffsize = 0x100000, buffer = None):
379 theseven 974
        """
975
            Reads <count> sectors starting at <sector> from storage <volume> to file <file>,
402 farthen 976
            buffering them in memory at [buffer] in chunks of [buffsize] bytes (both optional).
379 theseven 977
        """
532 farthen 978
        volume = to_int(volume)
979
        sector = to_int(sector)
980
        count = to_int(count)
981
        buffsize = to_int(buffsize)
379 theseven 982
        try:
479 theseven 983
            f = open(file, 'wb')
984
        except IOError:
985
            raise ArgumentError("Could not open local file for writing.")
986
        try:
482 theseven 987
            storageinfo = self.emcore.storage_get_info(volume)
988
            buffsize = min(buffsize, storageinfo.sectorsize * count)
479 theseven 989
            if buffer is None:
644 theseven 990
                buffer = self.emcore.memalign(0x10, buffsize)
479 theseven 991
                malloc = True
992
            else:
532 farthen 993
                buffer = to_int(buffer)
479 theseven 994
                malloc = False
472 farthen 995
            try:
479 theseven 996
                self.logger.info("Reading volume %s sectors %X - %X to %s..." % (volume, sector, sector + count - 1, file))
997
                while count > 0:
998
                    sectors = min(count, int(buffsize / storageinfo.sectorsize))
999
                    self.emcore.storage_read_sectors_md(volume, sector, sectors, buffsize, buffer)
1000
                    f.write(self.emcore.read(buffer, storageinfo.sectorsize * sectors))
1001
                    sector = sector + sectors
1002
                    count = count - sectors
1003
            finally:
1004
                if malloc == True:
1005
                    self.emcore.free(buffer)
1006
        finally:
472 farthen 1007
            f.close()
379 theseven 1008
        self.logger.info("done\n")
517 farthen 1009
 
379 theseven 1010
    @command
475 farthen 1011
    def writerawstoragefile(self, volume, sector, count, file, buffsize = 0x100000, buffer = None):
379 theseven 1012
        """
1013
            Writes contents of <file> to <count> sectors starting at <sector> on storage <volume>,
402 farthen 1014
            buffering them in memory at [buffer] in chunks of [buffsize] bytes (both optional).
379 theseven 1015
        """
532 farthen 1016
        volume = to_int(volume)
1017
        sector = to_int(sector)
1018
        count = to_int(count)
1019
        buffsize = to_int(buffsize)
379 theseven 1020
        try:
479 theseven 1021
            f = open(file, 'rb')
1022
        except IOError:
1023
            raise ArgumentError("Could not open local file for reading.")
1024
        try:
482 theseven 1025
            storageinfo = self.emcore.storage_get_info(volume)
1026
            buffsize = min(buffsize, storageinfo.sectorsize * count)
479 theseven 1027
            if buffer is None:
644 theseven 1028
                buffer = self.emcore.memalign(0x10, buffsize)
479 theseven 1029
                malloc = True
1030
            else:
532 farthen 1031
                buffer = to_int(buffer)
479 theseven 1032
                malloc = False
472 farthen 1033
            try:
479 theseven 1034
                self.logger.info("Writing %s to volume %s sectors %X - %X..." % (file, volume, sector, sector + count - 1))
1035
                while count > 0:
1036
                    sectors = min(count, int(buffsize / storageinfo.sectorsize))
1037
                    bytes = storageinfo.sectorsize * sectors
1038
                    data = f.read(bytes)
1039
                    if len(data) == 0: break
1040
                    while len(data) < bytes: data = data + f.read(bytes - len(data))
1041
                    self.emcore.write(buffer, data)
1042
                    self.emcore.storage_write_sectors_md(volume, sector, sectors, buffsize, buffer)
1043
                    sector = sector + sectors
1044
                    count = count - sectors
1045
            finally:
1046
                if malloc == True:
1047
                    self.emcore.free(buffer)
1048
        finally:
472 farthen 1049
            f.close()
379 theseven 1050
        self.logger.info("done\n")
517 farthen 1051
 
379 theseven 1052
    @command
346 theseven 1053
    def mkdir(self, dirname):
1054
        """
402 farthen 1055
            Creates a directory with the name <dirname>
346 theseven 1056
        """
516 farthen 1057
        self.logger.info("Creating directory %s..." % dirname)
427 farthen 1058
        self.emcore.dir_create(dirname)
346 theseven 1059
        self.logger.info(" done\n")
517 farthen 1060
 
346 theseven 1061
    @command
1062
    def rmdir(self, dirname):
1063
        """
402 farthen 1064
            Removes an empty directory with the name <dirname>
346 theseven 1065
        """
516 farthen 1066
        self.logger.info("Removing directory %s..." % dirname)
427 farthen 1067
        self.emcore.dir_remove(dirname)
346 theseven 1068
        self.logger.info(" done\n")
517 farthen 1069
 
346 theseven 1070
    @command
349 theseven 1071
    def rm(self, filename):
346 theseven 1072
        """
402 farthen 1073
            Removes a file with the name <filename>
346 theseven 1074
        """
516 farthen 1075
        self.logger.info("Removing file %s..." % filename)
427 farthen 1076
        self.emcore.file_unlink(filename)
346 theseven 1077
        self.logger.info(" done\n")
517 farthen 1078
 
346 theseven 1079
    @command
406 theseven 1080
    def rmtree(self, path):
1081
        """
1082
            Recursively removes a folder
1083
            <path>: the folder to be removed
1084
        """
427 farthen 1085
        handle = self.emcore.dir_open(path)
406 theseven 1086
        while True:
1087
            try:
427 farthen 1088
                entry = self.emcore.dir_read(handle)
406 theseven 1089
                if entry.name == "." or entry.name == "..": continue
1090
                elif entry.attributes & 0x10:
1091
                    self.rmtree(path + "/" + entry.name)
1092
                else: self.rm(path + "/" + entry.name)
1093
            except: break
427 farthen 1094
        self.emcore.dir_close(handle)
406 theseven 1095
        self.rmdir(path)
517 farthen 1096
 
406 theseven 1097
    @command
352 theseven 1098
    def mv(self, oldname, newname):
350 theseven 1099
        """
402 farthen 1100
            Renames or moves file or directory <oldname> to <newname>
350 theseven 1101
        """
516 farthen 1102
        self.logger.info("Renaming %s to %s..." % (oldname, newname))
427 farthen 1103
        self.emcore.file_rename(oldname, newname)
350 theseven 1104
        self.logger.info(" done\n")
517 farthen 1105
 
350 theseven 1106
    @command
475 farthen 1107
    def get(self, remotename, localname, buffsize = 0x10000, buffer = None):
346 theseven 1108
        """
1109
            Downloads a file
402 farthen 1110
            <remotename>: filename on the device
1111
            <localname>: filename on the computer
472 farthen 1112
            [buffsize]: buffer size (optional)
402 farthen 1113
            [buffer]: buffer address (optional)
346 theseven 1114
        """
532 farthen 1115
        buffsize = to_int(buffsize)
346 theseven 1116
        try:
479 theseven 1117
            f = open(localname, 'wb')
1118
        except IOError:
1119
            raise ArgumentError("Could not open local file for writing.")
1120
        try:
482 theseven 1121
            fd = self.emcore.file_open(remotename, 0)
472 farthen 1122
            try:
482 theseven 1123
                size = self.emcore.file_size(fd)
1124
                buffsize = min(buffsize, size)
1125
                if buffer is None:
644 theseven 1126
                    buffer = self.emcore.memalign(0x10, buffsize)
482 theseven 1127
                    malloc = True
1128
                else:
532 farthen 1129
                    buffer = to_int(buffer)
482 theseven 1130
                    malloc = False
479 theseven 1131
                try:
516 farthen 1132
                    self.logger.info("Downloading file %s to %s..." % (remotename, localname))
479 theseven 1133
                    while size > 0:
488 theseven 1134
                        bytes = self.emcore.file_read(fd, buffsize, buffer).rc
479 theseven 1135
                        f.write(self.emcore.read(buffer, bytes))
1136
                        size = size - bytes
1137
                finally:
482 theseven 1138
                    if malloc == True:
1139
                        self.emcore.free(buffer)
479 theseven 1140
            finally:
482 theseven 1141
                self.emcore.file_close(fd)
479 theseven 1142
        finally:
472 farthen 1143
            f.close()
346 theseven 1144
        self.logger.info(" done\n")
517 farthen 1145
 
346 theseven 1146
    @command
475 farthen 1147
    def gettree(self, remotepath, localpath, buffsize = 0x10000, buffer = None):
406 theseven 1148
        """
1149
            Downloads a directory tree
1150
            <remotepath>: path on the device
1151
            <localpath>: path on the computer
472 farthen 1152
            [buffsize]: buffer size (optional)
406 theseven 1153
            [buffer]: buffer address (optional)
1154
        """
532 farthen 1155
        buffsize = to_int(buffsize)
479 theseven 1156
        handle = self.emcore.dir_open(remotepath)
472 farthen 1157
        try:
479 theseven 1158
            if buffer is None:
644 theseven 1159
                buffer = self.emcore.memalign(0x10, buffsize)
479 theseven 1160
                malloc = True
1161
            else:
532 farthen 1162
                buffer = to_int(buffer)
479 theseven 1163
                malloc = False
1164
            try:
1165
                try: os.mkdir(localpath)
1166
                except: pass
1167
                while True:
1168
                    try:
1169
                        entry = self.emcore.dir_read(handle)
1170
                    except: break
486 theseven 1171
                    if entry.name == "." or entry.name == "..": continue
1172
                    elif entry.attributes & 0x10:
1173
                        self.gettree(remotepath + "/" + entry.name, localpath + "/" + entry.name, buffsize, buffer)
1174
                    else: self.get(remotepath + "/" + entry.name, localpath + "/" + entry.name, buffsize, buffer)
479 theseven 1175
            finally:
1176
                if malloc == True:
1177
                    self.emcore.free(buffer)
1178
        finally:
472 farthen 1179
            self.emcore.dir_close(handle)
517 farthen 1180
 
406 theseven 1181
    @command
475 farthen 1182
    def put(self, localname, remotename, buffsize = 0x10000, buffer = None):
346 theseven 1183
        """
1184
            Uploads a file
406 theseven 1185
            <localname>: filename on the computer
402 farthen 1186
            <remotename>: filename on the device
472 farthen 1187
            [buffsize]: buffer size (optional)
402 farthen 1188
            [buffer]: buffer address (optional)
346 theseven 1189
        """
532 farthen 1190
        buffsize = to_int(buffsize)
346 theseven 1191
        try:
479 theseven 1192
            f = open(localname, 'rb')
1193
        except IOError:
1194
            raise ArgumentError("Could not open local file for reading.")
1195
        try:
482 theseven 1196
            buffsize = min(buffsize, os.path.getsize(localname))
479 theseven 1197
            if buffer is None:
644 theseven 1198
                buffer = self.emcore.memalign(0x10, buffsize)
479 theseven 1199
                malloc = True
1200
            else:
532 farthen 1201
                buffer = to_int(buffer)
479 theseven 1202
                malloc = False
472 farthen 1203
            try:
516 farthen 1204
                self.logger.info("Uploading file %s to %s..." % (localname, remotename))
479 theseven 1205
                fd = self.emcore.file_open(remotename, 0x15)
1206
                try:
1207
                    while True:
1208
                        data = f.read(buffsize)
1209
                        if len(data) == 0: break
1210
                        self.emcore.write(buffer, data)
1211
                        bytes = 0
1212
                        while bytes < len(data):
1213
                            bytes = bytes + self.emcore.file_write(fd, len(data) - bytes, buffer + bytes)
1214
                finally:
1215
                    self.emcore.file_close(fd)
1216
            finally:
1217
                if malloc == True:
1218
                    self.emcore.free(buffer)
1219
        finally:
472 farthen 1220
            f.close()
346 theseven 1221
        self.logger.info(" done\n")
517 farthen 1222
 
346 theseven 1223
    @command
475 farthen 1224
    def puttree(self, localpath, remotepath, buffsize = 0x10000, buffer = None):
406 theseven 1225
        """
1226
            Uploads a directory tree
1227
            <localpath>: path on the computer
1228
            <remotepath>: path on the device
472 farthen 1229
            [buffsize]: buffer size (optional)
406 theseven 1230
            [buffer]: buffer address (optional)
1231
        """
532 farthen 1232
        buffsize = to_int(buffsize)
472 farthen 1233
        if buffer is None:
644 theseven 1234
            buffer = self.emcore.memalign(0x10, buffsize)
472 farthen 1235
            malloc = True
1236
        else:
532 farthen 1237
            buffer = to_int(buffer)
472 farthen 1238
            malloc = False
1239
        try:
1240
            try: self.mkdir(remotepath)
1241
            except: self.logger.info(" failed\n")
1242
            pathlen = len(localpath)
1243
            for d in os.walk(localpath):
1244
                prefix = remotepath + "/" + d[0].replace("\\", "/")[pathlen:] + "/"
1245
                for dir in d[1]:
1246
                    if dir != ".svn":
1247
                        try: self.mkdir(prefix + dir)
1248
                        except: self.logger.info(" failed\n")
1249
                for f in d[2]:
479 theseven 1250
                    if prefix.find("/.svn/") == -1:
477 farthen 1251
                        self.put(d[0] + "/" + f, prefix + f, buffsize, buffer)
472 farthen 1252
        finally:
1253
            if malloc == True:
1254
                self.emcore.free(buffer)
517 farthen 1255
 
406 theseven 1256
    @command
351 theseven 1257
    def ls(self, path = "/"):
346 theseven 1258
        """
1259
            Lists all files in the specified path
402 farthen 1260
            [path]: the path which is listed
346 theseven 1261
        """
427 farthen 1262
        handle = self.emcore.dir_open(path)
516 farthen 1263
        self.logger.info("Directory listing of %s:\n" % path)
346 theseven 1264
        while True:
1265
            try:
427 farthen 1266
                entry = self.emcore.dir_read(handle)
346 theseven 1267
            except: break
486 theseven 1268
            if entry.attributes & 0x10: size = "DIR"
1269
            else: size = locale.format("%d", entry.size, True).rjust(13)
1270
            self.logger.info(entry.name.ljust(50) + " - " + size + "\n")
427 farthen 1271
        self.emcore.dir_close(handle)
474 farthen 1272
 
1273
    @command
483 theseven 1274
    def find(self, path = "/"):
1275
        """
1276
            Lists all files in the specified path, recursively
1277
            [path]: the path which is listed
1278
        """
1279
        handle = self.emcore.dir_open(path)
1280
        self.logger.info(path + "/\n")
1281
        while True:
1282
            try:
1283
                entry = self.emcore.dir_read(handle)
1284
            except: break
486 theseven 1285
            if entry.name == "." or entry.name == "..": continue
1286
            elif entry.attributes & 0x10: self.find(path + "/" + entry.name)
1287
            else: self.logger.info(path + "/" + entry.name + "\n")
483 theseven 1288
        self.emcore.dir_close(handle)
1289
 
1290
    @command
474 farthen 1291
    def malloc(self, size):
1292
        """ Allocates <size> bytes and returns a pointer to the allocated memory """
532 farthen 1293
        size = to_int(size)
474 farthen 1294
        self.logger.info("Allocating %d bytes of memory\n" % size)
1295
        addr = self.emcore.malloc(size)
518 farthen 1296
        self.logger.info("Allocated %d bytes of memory at 0x%X\n" % (size, addr))
474 farthen 1297
 
1298
    @command
1299
    def memalign(self, align, size):
1300
        """ Allocates <size> bytes aligned to <align> and returns a pointer to the allocated memory """
532 farthen 1301
        align = to_int(align)
1302
        size = to_int(size)
518 farthen 1303
        self.logger.info("Allocating %d bytes of memory aligned to 0x%X\n" % (size, align))
474 farthen 1304
        addr = self.emcore.memalign(align, size)
518 farthen 1305
        self.logger.info("Allocated %d bytes of memory at 0x%X\n" % (size, addr))
474 farthen 1306
 
1307
    @command
1308
    def realloc(self, ptr, size):
1309
        """ The size of the memory block pointed to by <ptr> is changed to the <size> bytes,
1310
            expanding or reducing the amount of memory available in the block.
1311
            Returns a pointer to the reallocated memory.
1312
        """
532 farthen 1313
        ptr = to_int(ptr)
1314
        size = to_int(size)
518 farthen 1315
        self.logger.info("Reallocating 0x%X to have the new size %d\n" % (ptr, size))
474 farthen 1316
        addr = self.emcore.realloc(ptr, size)
518 farthen 1317
        self.logger.info("Reallocated memory at 0x%X to 0x%X with the new size %d\n" % (ptr, addr, size))
474 farthen 1318
 
1319
    @command
1320
    def reownalloc(self, ptr, owner):
1321
        """ Changes the owner of the memory allocation <ptr> to the thread struct at addr <owner> """
532 farthen 1322
        ptr = to_int(ptr)
1323
        owner = to_int(owner)
518 farthen 1324
        self.logger.info("Changing owner of the memory region 0x%X to 0x%X\n" % (ptr, owner))
474 farthen 1325
        self.emcore.reownalloc(ptr, owner)
518 farthen 1326
        self.logger.info("Successfully changed owner of 0x%X to 0x%X\n" % (ptr, owner))
474 farthen 1327
 
1328
    @command
1329
    def free(self, ptr):
1330
        """ Frees the memory space pointed to by 'ptr' """
532 farthen 1331
        ptr = to_int(ptr)
518 farthen 1332
        self.logger.info("Freeing the memory region at 0x%X\n" % ptr)
474 farthen 1333
        self.emcore.free(ptr)
518 farthen 1334
        self.logger.info("Successfully freed the memory region at 0x%X\n" % ptr)
474 farthen 1335
 
1336
    @command
1337
    def free_all(self):
1338
        """ Frees all memory allocations created by the monitor thread """
1339
        self.logger.info("Freeing all memory allocations created by the monitor thread\n")
1340
        self.emcore.free_all()
1341
        self.logger.info("Successfully freed all memory allocations created by the monitor thread\n")
778 farthen 1342
 
1343
    @command
1344
    def rtcread(self):
1345
        """ Reads the real time clock on the device """
1346
        import datetime
1347
        self.logger.info("Reading the clock\n")
1348
        dt = self.emcore.rtcread()
1349
        self.logger.info("Successfully read the clock: %s\n" % (dt.ctime()))
1350
 
1351
    @command
1352
    def rtcwrite(self):
1353
        """ Sets the real time clock on the device to the current local time """
1354
        import datetime
1355
        dt = datetime.datetime.now()
1356
        self.logger.info("Setting the clock to: %s\n" % (dt.ctime()))
1357
        self.emcore.rtcwrite(dt)
1358
        self.logger.info("Successfully set the clock\n")
474 farthen 1359
 
346 theseven 1360
 
171 farthen 1361
if __name__ == "__main__":
1362
    if len(sys.argv) < 2:
502 farthen 1363
        usage("No command specified", docstring = False)
382 farthen 1364
    try:
1365
        interface = Commandline()
1366
        interface._parsecommand(sys.argv[1], sys.argv[2:])
1367
    except KeyboardInterrupt:
778 farthen 1368
        sys.exit()